Norovirus is an infectious disease that can cause non-bacterial gastroenteritis,which has a low infectious dose,rapid onset,and strong transmission ability;therefore,rapid and sensitive detection is essential to reduc...Norovirus is an infectious disease that can cause non-bacterial gastroenteritis,which has a low infectious dose,rapid onset,and strong transmission ability;therefore,rapid and sensitive detection is essential to reduce the transmission of gastroenteritis.In the study,a norovirus GII loop-mediated isothermal amplification assay was developed and prepared into freeze-drying microspheres,and a closed-cassette-based,integrated,reagent-ambient storage,on-site instant detection platform for norovirus GII was constructed using a commercial,fully automated nucleic acid analyzer with integrated magnetic bearing based nuclear acid extraction and nucleic acid detection,with a sensitivity of 10 copies/μL,with no cross-reactivity with other 5 viruses.For 28 simulated samples,the integrated assay platform was consistent with the experimental results of reverse transcription-quantitative polymerase chain reaction(RT-qPCR)assays after conventional laboratory nucleic acid extraction.The entire process can be finished in about 1 h,which is ideal for immediate rapid detection.展开更多
为阐明GII.12型诺如病毒与组织血型抗原(Histo-blood group antigens,HBGAs)受体结合模式,本研究首先合成GII.12型诺如病毒毒株Pune株(GenBank登录号:EU921353)P区基因序列,并在原核系统中表达P蛋白,利用快速液相色谱分析鉴定P粒子的形...为阐明GII.12型诺如病毒与组织血型抗原(Histo-blood group antigens,HBGAs)受体结合模式,本研究首先合成GII.12型诺如病毒毒株Pune株(GenBank登录号:EU921353)P区基因序列,并在原核系统中表达P蛋白,利用快速液相色谱分析鉴定P粒子的形成,将P粒子免疫小鼠,应用HBGAs表型明确的唾液样本分析P粒子的HBGAs结合模式。通过唾液结合分析,GII.12型诺如病毒Pune株与B型、AB型唾液结合较高,与A型、O型分泌型及O型非分泌型唾液结合较低,表明GII.12型诺如病毒与B抗原亲和性更高,这与先前GII.12型诺如病毒晶体结构的研究一致。这些研究提示,B型、AB型个体相对于其他血型个体,可能对GII.12型诺如病毒更具易感性。GII.12型诺如病毒与B抗原有更高的亲和性,为GII.12型诺如病毒的预防和控制提供了科学基础。展开更多
Dear Editor,Noroviruses are positive-sense, single-stranded RNA viruses belonging to Caliciviridae and account for more than 50%of all acute gastroenteritis (AGE) outbreaks worldwide and cause an estimated 200,000 dea...Dear Editor,Noroviruses are positive-sense, single-stranded RNA viruses belonging to Caliciviridae and account for more than 50%of all acute gastroenteritis (AGE) outbreaks worldwide and cause an estimated 200,000 deaths per year among children\5 years of age, primarily in developing countries (Hall et al. 2012;Glass et al. 2009). The norovirus genome contains three open reading frames (ORFs).展开更多
2019年7月24日,世界知识产权组织(WIPO)发布了2019年全球创新指数(Global Innovation Index 2019,GII),基于80项指标对129个经济体进行排名,评出了各个地区的创新领导者。北美:美国(3),在信贷和投资市场质量方面保持全球领先,并且拥有...2019年7月24日,世界知识产权组织(WIPO)发布了2019年全球创新指数(Global Innovation Index 2019,GII),基于80项指标对129个经济体进行排名,评出了各个地区的创新领导者。北美:美国(3),在信贷和投资市场质量方面保持全球领先,并且拥有研发密集型的全球公司与顶尖的科学出版物和高校;在创新质量方面居全球之冠;是世界技术集群百强中入围最多的国家(26个)。展开更多
诺如病毒(Noroviruses,NoVs)是引起非菌型胃肠炎暴发流行的主要病原体之一。为了解我国GII.3型NoVs毒株的变异以及受体结合模式,本研究对来自2015年一起中国广州NoVs胃肠炎暴发的GII.3型毒株GZ31597株进行聚合酶区和完整VP1区基因扩增...诺如病毒(Noroviruses,NoVs)是引起非菌型胃肠炎暴发流行的主要病原体之一。为了解我国GII.3型NoVs毒株的变异以及受体结合模式,本研究对来自2015年一起中国广州NoVs胃肠炎暴发的GII.3型毒株GZ31597株进行聚合酶区和完整VP1区基因扩增、序列测定和序列分析,并表达VP1突出区蛋白(P蛋白),通过P蛋白与不同血型唾液样本的酶免疫分析法(EIA)测定实验确定其组织血型抗原(Histo-blood group antigens,HBGAs)结合模式。GZ31597株聚合酶和VP1基因系统进化分析表明,GZ31597株为GII.P12/GII.3-SubD基因型(聚合酶/衣壳区),该毒株较先前的GII.3毒株相比,在既是抗原表位又是HBGAs受体结合位点的氨基酸385残基发生了氨基酸转换。根据Western Blotting结果,证实P蛋白成功表达。唾液结合分析结果显示,该毒株P蛋白与A、B、AB、O型分泌型以及O型非分泌型唾液均可以结合,但结合值相对低。本研究表明该GII.P12/GII.3-SubD亚型的GII.3毒株在长期的流行过程中,通过氨基酸的转换,改变抗原性和受体结合活性,使GII.3型毒株在人群中继续流行。通过探索GII.3型NoVs在人群中长期广泛流行的原因,为GII.3型诺如病毒性胃肠炎的预防和控制提供重要依据。展开更多
Noroviruses(NoVs)are the primary cause of acute gastroenteritis worldwide.Histo-blood group antigens(HBGAs)are receptors or attachment factors that affect the prevalence and host susceptibility of NoVs.GII.6 NoV is on...Noroviruses(NoVs)are the primary cause of acute gastroenteritis worldwide.Histo-blood group antigens(HBGAs)are receptors or attachment factors that affect the prevalence and host susceptibility of NoVs.GII.6 NoV is one of the predominant genotypes in humans,which recognizes the type ABO secretor of HBGAs.However,the structural basis of GII.6 NoV's interaction with HBGAs receptors remains elusive.In this study,we investigated the binding features of the GII.6 strain to HBGAs using saliva-and glycan-ELISA assays and characterized the molecular basis of the GII.6 virus that recognizes H disaccharide.We showed that the GII.6 P domain recognized some A and O secretor's saliva samples,most B secretor's saliva samples,and H disaccharide antigen,but did not bind non-secretors’saliva.Further,we determined the crystal structures of GII.6 and its complex with H disaccharides at 1.7Å,revealing that the P domain of GII.6 shares the conventional binding interface and mode of GII HBGAs.Single residue mutations at the GII.6-H binding sites could inhibit the binding of GII.6 to HBGAs,demonstrating that the interaction residues were crucial in maintaining NoV-glycan integrity.Finally,structural and sequence analyses showed that the major residues of the GII.6-H interaction were conserved among NoVs in the GII genogroup.Taken together,our study characterized the functional and structural features of GII.6 that allow it to interact with HBGAs,and shed light on NoV evolution,epidemiology,and anti-viral drug development.展开更多
基金funded by the Science and Technology Development Fund,Macao SAR(Nos.0065/2020/A2,SKLQRCM(MUST)-2020-2022)Shenzhen-Hong Kong-Macao Science and Technology Project(Grade c)(No.SGDX20210823104201010).
文摘Norovirus is an infectious disease that can cause non-bacterial gastroenteritis,which has a low infectious dose,rapid onset,and strong transmission ability;therefore,rapid and sensitive detection is essential to reduce the transmission of gastroenteritis.In the study,a norovirus GII loop-mediated isothermal amplification assay was developed and prepared into freeze-drying microspheres,and a closed-cassette-based,integrated,reagent-ambient storage,on-site instant detection platform for norovirus GII was constructed using a commercial,fully automated nucleic acid analyzer with integrated magnetic bearing based nuclear acid extraction and nucleic acid detection,with a sensitivity of 10 copies/μL,with no cross-reactivity with other 5 viruses.For 28 simulated samples,the integrated assay platform was consistent with the experimental results of reverse transcription-quantitative polymerase chain reaction(RT-qPCR)assays after conventional laboratory nucleic acid extraction.The entire process can be finished in about 1 h,which is ideal for immediate rapid detection.
文摘为阐明GII.12型诺如病毒与组织血型抗原(Histo-blood group antigens,HBGAs)受体结合模式,本研究首先合成GII.12型诺如病毒毒株Pune株(GenBank登录号:EU921353)P区基因序列,并在原核系统中表达P蛋白,利用快速液相色谱分析鉴定P粒子的形成,将P粒子免疫小鼠,应用HBGAs表型明确的唾液样本分析P粒子的HBGAs结合模式。通过唾液结合分析,GII.12型诺如病毒Pune株与B型、AB型唾液结合较高,与A型、O型分泌型及O型非分泌型唾液结合较低,表明GII.12型诺如病毒与B抗原亲和性更高,这与先前GII.12型诺如病毒晶体结构的研究一致。这些研究提示,B型、AB型个体相对于其他血型个体,可能对GII.12型诺如病毒更具易感性。GII.12型诺如病毒与B抗原有更高的亲和性,为GII.12型诺如病毒的预防和控制提供了科学基础。
基金supported by the Special National Project on Research and Development of Key Biosafety Technologies (2016YFC1201900)the National Natural Science Foundation of China (31500139)
文摘Dear Editor,Noroviruses are positive-sense, single-stranded RNA viruses belonging to Caliciviridae and account for more than 50%of all acute gastroenteritis (AGE) outbreaks worldwide and cause an estimated 200,000 deaths per year among children\5 years of age, primarily in developing countries (Hall et al. 2012;Glass et al. 2009). The norovirus genome contains three open reading frames (ORFs).
文摘2019年7月24日,世界知识产权组织(WIPO)发布了2019年全球创新指数(Global Innovation Index 2019,GII),基于80项指标对129个经济体进行排名,评出了各个地区的创新领导者。北美:美国(3),在信贷和投资市场质量方面保持全球领先,并且拥有研发密集型的全球公司与顶尖的科学出版物和高校;在创新质量方面居全球之冠;是世界技术集群百强中入围最多的国家(26个)。
文摘诺如病毒(Noroviruses,NoVs)是引起非菌型胃肠炎暴发流行的主要病原体之一。为了解我国GII.3型NoVs毒株的变异以及受体结合模式,本研究对来自2015年一起中国广州NoVs胃肠炎暴发的GII.3型毒株GZ31597株进行聚合酶区和完整VP1区基因扩增、序列测定和序列分析,并表达VP1突出区蛋白(P蛋白),通过P蛋白与不同血型唾液样本的酶免疫分析法(EIA)测定实验确定其组织血型抗原(Histo-blood group antigens,HBGAs)结合模式。GZ31597株聚合酶和VP1基因系统进化分析表明,GZ31597株为GII.P12/GII.3-SubD基因型(聚合酶/衣壳区),该毒株较先前的GII.3毒株相比,在既是抗原表位又是HBGAs受体结合位点的氨基酸385残基发生了氨基酸转换。根据Western Blotting结果,证实P蛋白成功表达。唾液结合分析结果显示,该毒株P蛋白与A、B、AB、O型分泌型以及O型非分泌型唾液均可以结合,但结合值相对低。本研究表明该GII.P12/GII.3-SubD亚型的GII.3毒株在长期的流行过程中,通过氨基酸的转换,改变抗原性和受体结合活性,使GII.3型毒株在人群中继续流行。通过探索GII.3型NoVs在人群中长期广泛流行的原因,为GII.3型诺如病毒性胃肠炎的预防和控制提供重要依据。
基金supported by grants from the National Natural Science Foundation of China(no.32100111,21934005)Guangdong Basic and Applied Basic Reuter Foundation(no.2019A1515110220)+1 种基金China Postdoctoral Science Foundation(no.2020M682900)Shenzhen High-level Hospital Construction Fund.
文摘Noroviruses(NoVs)are the primary cause of acute gastroenteritis worldwide.Histo-blood group antigens(HBGAs)are receptors or attachment factors that affect the prevalence and host susceptibility of NoVs.GII.6 NoV is one of the predominant genotypes in humans,which recognizes the type ABO secretor of HBGAs.However,the structural basis of GII.6 NoV's interaction with HBGAs receptors remains elusive.In this study,we investigated the binding features of the GII.6 strain to HBGAs using saliva-and glycan-ELISA assays and characterized the molecular basis of the GII.6 virus that recognizes H disaccharide.We showed that the GII.6 P domain recognized some A and O secretor's saliva samples,most B secretor's saliva samples,and H disaccharide antigen,but did not bind non-secretors’saliva.Further,we determined the crystal structures of GII.6 and its complex with H disaccharides at 1.7Å,revealing that the P domain of GII.6 shares the conventional binding interface and mode of GII HBGAs.Single residue mutations at the GII.6-H binding sites could inhibit the binding of GII.6 to HBGAs,demonstrating that the interaction residues were crucial in maintaining NoV-glycan integrity.Finally,structural and sequence analyses showed that the major residues of the GII.6-H interaction were conserved among NoVs in the GII genogroup.Taken together,our study characterized the functional and structural features of GII.6 that allow it to interact with HBGAs,and shed light on NoV evolution,epidemiology,and anti-viral drug development.